Department of Neurosurgery, the Second Affiliated Hospital of Xi'an Jiaotong University, Xi'an, 710004, China.
Department of Otolaryngology-Head & Neck Surgery, Johns Hopkins University School of Medicine, Baltimore, 21205, USA.
Curr Med Sci. 2019 Feb;39(1):166-172. doi: 10.1007/s11596-019-2015-5. Epub 2019 Mar 13.
Three-point head fixation was constructed to provide mechanical stability for single unit recording (SUR) on vestibular sensory system in living chinchilla previously. However, it is no more qualified to this work when the stimulation intensity becomes large because of frequent unit losing and neuron damage, which strongly implies that the mechanical stability has been broken during the stimulation. Here, we constructed a novel head fixation (skull cap assistant head fixation) provided by skull cap on the basis of three-point head fixation in order to improve the mechanical stability for SUR under the stimulation with large magnitude. The large area bone connection is the feature and advantage of this improved method, which directly fixes the tested local nervous tissue and microelectrode in an intact stable system through skull cap except two ear bars and a tube face mask. Our data exhibited that skull cap assistant head fixation could significantly improve the success rate of neural response activity recording in the population of semicircular canal neurons under the stimulation with large intensity (amplitude ≥100 deg/s). Based on the analysis of neural response activity and noise base-line during stimulation, our data further indicated that this method could significantly improve the mechanical stability for SUR during high-speed motion stimulation on vestibular system in living chinchilla. Skull cap assistant head fixation extends the application of SUR on vestibular neuron in linear response range and provides a solid foundation for electrophysiological research on vestibular sensory system in further studies.
三点头固定装置先前被构建用于为活体南美栗鼠前庭感觉系统的单个单位记录(SUR)提供机械稳定性。然而,当刺激强度增大时,由于频繁的单位丢失和神经元损伤,它已经不再适用于这项工作,这强烈表明在刺激过程中机械稳定性已经被破坏。在这里,我们在三点头固定装置的基础上构建了一种新型的头固定装置(颅骨帽辅助头固定装置),以提高在大刺激强度下 SUR 的机械稳定性。这种改进方法的特点和优势是大面积的骨连接,它通过颅骨帽(除了两个耳棒和一个管面罩)直接将测试的局部神经组织和微电极固定在一个完整稳定的系统中。我们的数据显示,颅骨帽辅助头固定装置可以显著提高在大强度(幅度≥100 度/秒)刺激下半规管神经元群体中神经反应活动记录的成功率。基于刺激期间神经反应活动和噪声基线的分析,我们的数据进一步表明,该方法可以显著提高活体南美栗鼠前庭系统高速运动刺激时 SUR 的机械稳定性。颅骨帽辅助头固定装置扩展了 SUR 在前庭神经元线性响应范围内的应用,并为进一步研究前庭感觉系统的电生理研究提供了坚实的基础。